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1 , a class of ubiquitous and highly conserved molecular chaperone.
2 and maintains muscle function by acting as a molecular chaperone.
3 rotein 90 (Hsp90) is an essential eukaryotic molecular chaperone.
4 p90alpha, the two cytosolic paralogs of this molecular chaperone.
5 multimeric form of Prdx-1 with activity as a molecular chaperone.
6 tructural requirements for its function as a molecular chaperone.
7 ealed that HdeB indeed works as an effective molecular chaperone.
8 ain indicating that YcjX might function as a molecular chaperone.
9 a cell and requires the action of effective molecular chaperones.
10 equires assistance by a complex machinery of molecular chaperones.
11 heat shock protein 90 kDa (Hsp90) family of molecular chaperones.
12 proteasome subunits, antioxidant enzymes and molecular chaperones.
13 r protein homeostasis and requires effective molecular chaperones.
14 controlled by various mechanisms, including molecular chaperones.
15 ins can only be achieved by interaction with molecular chaperones.
16 sHsps) compose the most widespread family of molecular chaperones.
17 peptidylprolyl isomerases, a superfamily of molecular chaperones.
18 (Hsp70s) are ubiquitous and highly conserved molecular chaperones.
19 uitous and ancient family of ATP-independent molecular chaperones.
20 uires the action of cotranslationally acting molecular chaperones.
23 a D21N 14-3-3zeta mutant exhibited enhanced molecular chaperone ability that prevented amorphous pro
24 w that a reduction in the expression of this molecular chaperone accelerates prion pathogenesis in vi
25 ate genes with assorted functions, including molecular chaperones, acid resistance, stress response a
27 rsity in the microscopic mechanisms by which molecular chaperones act to suppress amyloid formation.
34 iSyTE-bioinformatics analysis identified the molecular chaperone and cytoskeletal modulator, HSPB1, a
36 nctional switch between UgpB's activity as a molecular chaperone and its activity as a G3P transporte
39 bination in a fragment screening against the molecular chaperone and oncology target Hsp90, for which
41 aracterized an interplay between the Hsp90Ec molecular chaperone and the ClpQ protease involved in co
42 ansmembrane-spanning proteins which serve as molecular chaperones and allosteric modulators of G-prot
43 tegies used to tune the PN through targeting molecular chaperones and assess the potential of the che
48 that considers pairwise interactions between molecular chaperones and different protein species to id
49 culum (ER) orthologue of the Hsp70 family of molecular chaperones and is intricately involved in most
51 eotoxic stress by inducing the expression of molecular chaperones and other heat shock response genes
54 asmic sites in a manner that is regulated by molecular chaperones and requires TORC1 activity signali
56 ostasis is achieved by a delicate network of molecular chaperones and various proteolytic processes s
57 rovide a comparative discussion of the Ric-8 molecular chaperoning and GEF activities, and support th
58 endoplasmic reticulum (ER) membrane protein, molecular chaperone, and a component of the translocon.
62 began with the study of protein folding and molecular chaperones, and she went on to show that prote
63 nd molecular stress responses (expression of molecular chaperones, antioxidants, bioenergetic and pro
67 Members of the Hsp90 and Hsp70 families of molecular chaperones are imp\ortant for the maintenance
73 We have investigated the potential role of molecular chaperones as modulators of the immune respons
76 o can be rescued from this inhibited form by molecular chaperones belonging to the ATPases associated
77 iously, we have shown that a cysteine in the molecular chaperone BiP, a Hsp70 molecular chaperone wit
82 n to contain a number of proteins, including molecular chaperones, but the consequences of these entr
84 90 (Hsp90) clients and are recruited to the molecular chaperone by the kinase-specific cochaperone c
85 reveal that the sequestration of cytoplasmic molecular chaperones by tau aggregates interferes with t
89 rial cell wall and inhibits SlyD, which is a molecular chaperone, cis/trans peptidyl prolyl isomerise
91 f cytoprotective heat shock proteins (HSPs), molecular chaperones/cochaperones constituting a major c
92 N-linked glycans and carbohydrate-binding molecular chaperones contribute to the efficient folding
95 (core 1 beta3-galactosyltransferase) and its molecular chaperone Cosmc regulate the biosynthesis of m
96 ycan biosynthesis is regulated by a specific molecular chaperone Cosmc through assisting of the corre
97 d by knocking-out Core 1 beta3Gal-T Specific Molecular Chaperone (COSMC), N-glycans by targeting the
103 eat shock protein 70 (Hsp70) is a ubiquitous molecular chaperone essential for maintaining cellular p
104 s issue, Chai et al. find that Munc18-1 is a molecular chaperone for alpha-synuclein and that aggrega
108 s an important regulator of EMT, acting as a molecular chaperone for SMAD4 and as its potential thera
110 ce of intracellular recycling of ER-resident molecular chaperones for collagen type I and bone metabo
112 quires the assistance of helper factors, the molecular chaperones, for quality control and the mainte
113 l heat-shock protein Hsp27 are linked to its molecular chaperone function and influenced by post-tran
116 Here, we present evidence that mitochondrial molecular chaperone GRP75, also known as mortalin/mthsp7
117 sY, ftsH, ftsE, mreB, mreC, mreD, rodA), and molecular chaperones (grpE, dnaK, dnaJ, hsp20, hsp90), e
119 To counter this threat to cell viability, molecular chaperones have evolved to help nascent polype
122 ssays), we studied the potential role of the molecular chaperone heat shock protein 70 (HSP70) in pri
126 cs are essential for function of the dimeric molecular chaperone heat shock protein 90 (Hsp90), inclu
130 ent tau aggregation, we demonstrate that the molecular chaperones heat-shock cognate 71-kDa protein (
132 erative disease-associated proteins with the molecular chaperone Hsc70 is well known, and we hypothes
137 rone Hsp70, and its interaction with another molecular chaperone Hsp104 on [SWI(+) ] maintenance.
140 nt FUS is implicated in this process, as the molecular chaperone Hsp110 mitigated these toxic effects
142 f Sse1 - a nucleotide exchange factor of the molecular chaperone Hsp70, and its interaction with anot
143 of alpha-syn aggregation is dependent on the molecular chaperone Hsp70, which is consistent with the
147 eadily accessible to the bud neck (including molecular chaperone Hsp82 and glycolytic enzyme Pgk1).
149 lation of ATPase and closure kinetics in the molecular chaperone Hsp90 by allosteric modulators throu
152 pecific co-chaperone that interacts with the molecular chaperone HSP90 to facilitate the stable assem
154 ell-known cellular RNA binding proteins, the molecular chaperone Hsp90 was identified as a component
155 Here, we identify one such protein, the molecular chaperone Hsp90, as an important factor requir
157 h highly conserved regulators, including the molecular chaperone Hsp90, the protein phosphatase calci
158 ) is the bacterial homolog of the eukaryotic molecular chaperone Hsp90, which is involved in the prot
163 nnel in HeLa cells and identified ER lumenal molecular chaperone immunoglobulin heavy-chain-binding p
165 ort that alphaB-crystallin, an antiapoptotic molecular chaperone implicated in the pathogenesis of di
166 The heat shock protein 70s (HSP70s) are molecular chaperones implicated in many cancers and of s
168 ll heat shock protein alphaA-crystallin is a molecular chaperone important for the optical properties
169 ith MEC-6, an endoplasmic reticulum-resident molecular chaperone in Caenorhabditis elegans MEC-6 modu
170 eat shock protein-90 (Hsp90) is an essential molecular chaperone in eukaryotes involved in maintainin
172 ted peroxidase activity, AnPrx6 can act as a molecular chaperone in its dimeric state, contrary to ot
173 ntribute to the fundamental understanding of molecular chaperones in assisting protein folding in liv
175 h preproteins and mediate the recruitment of molecular chaperones in the intermembrane space to facil
176 portance in maintaining protein homeostasis, molecular chaperones, including heat-shock protein 90 (H
177 ock protein 90 (Hsp90) is a highly conserved molecular chaperone involved in ATP-dependent client pro
179 ses from the Hsp100/Clp family are a type of molecular chaperones involved in disassembling protein a
180 ) immunoglobulin binding proteins (BiPs) are molecular chaperones involved in normal protein maturati
181 are highlighted in the context of studies of molecular chaperones involved in protein disaggregation.
183 and toward that end, modulation of cellular molecular chaperones is a potential therapeutic target.
184 udy, we found that HSP90, a highly conserved molecular chaperone, is overexpressed in CLL compared wi
185 SJ1 (DNAJB2), a member of the DNAJ family of molecular chaperones, is a key player in neuronal proteo
186 deling of the inhibited complexes by diverse molecular chaperones known as rubisco activases (Rcas).
187 The inhibition is counteracted by diverse molecular chaperones known as Rubisco activases (Rcas).
189 , fully mapping an allosteric landscape of a molecular chaperone like DnaK will facilitate the develo
191 his transaction along with recently proposed molecular chaperone-like functions for CCS1 remain undef
193 t intriguing results showing that "designer" molecular chaperones may hold the key to an evolutionari
194 tor class due to interactions with different molecular chaperones, mediated in part by strict spatial
195 that rational development of drugs targeting molecular chaperones might help in future control of pat
197 We show that the disaggregase Hsp101, a molecular chaperone of the Hsp100 family, dissolves heat
198 ATP-binding nonglycosylated ligand-regulated molecular chaperone of unknown three-dimensional structu
199 sis network coordinates these processes with molecular chaperones of different classes and their regu
201 gely unknown, its sequence domains suggest a molecular chaperone or protein quality control function.
202 el system to decipher the mechanism by which molecular chaperones overcome the multiple challenges du
208 tienzyme complex in lysosomes along with the molecular chaperone, protective protein cathepsin A (PPC
214 discusses current understanding of how Hsp70 molecular chaperones recognize and act on their substrat
216 omain (NBD) of heat shock protein 70 (Hsp70) molecular chaperones reduces the affinity of their C-ter
217 results help resolve the mechanisms by which molecular chaperones regulate the balance between AR agg
218 The heat shock protein 90 (Hsp90) family of molecular chaperones regulates protein homeostasis, fold
219 r Galphai, Galphaq, and Galpha12/13 and as a molecular chaperone required for the initial association
220 found that the sigma-1 receptor (Sig-1R), a molecular chaperone, reverses the pathological effects o
221 hotosynthesis the AAA+ protein and essential molecular chaperone Rubisco activase (Rca) constantly re
222 f carbon fixation into the biosphere, by its molecular chaperone Rubisco activase (Rca) is essential
224 highly polymorphic set of MHC-I alleles and molecular chaperones shapes the repertoire of peptide an
225 ps) are a family of ubiquitous intracellular molecular chaperones; some sHsp family members are upreg
227 understand how low concentrations of passive molecular chaperones, such as small heat-shock proteins,
230 volution is the expression of well-conserved molecular chaperones, such as those that are part of the
232 embly intermediates or evidence that another molecular chaperone system was used for antibody product
237 ck protein of 90 kDa (Hsp90) is an essential molecular chaperone that adopts different 3D structures
239 res the receptor-associated protein (RAP), a molecular chaperone that binds LRP1 and other low densit
240 in the absence of its substrate, as a potent molecular chaperone that exhibits anti-aggregation activ
241 (HSP47) is an endoplasmic reticulum-resident molecular chaperone that facilitates collagen maturation
243 proline isomerase and turns it into a potent molecular chaperone that inhibits protein misfolding.
247 eat-shock protein HSP27 is a redox-sensitive molecular chaperone that is expressed throughout the hum
248 in 90 (Hsp90) is an evolutionarily conserved molecular chaperone that is involved in the stability an
249 lated protein 75 (GRP75)] is a mitochondrial molecular chaperone that is often up-regulated and mislo
251 (Hsp90) is a widely conserved and ubiquitous molecular chaperone that participates in ATP-dependent p
253 novel role for the N terminus of hTLR7 as a molecular chaperone that provides processed hTLR7 with t
254 eat shock protein 70 (Hsp70) is an important molecular chaperone that regulates oncoprotein stability
258 for the 90-kDa heat shock protein (HSP90), a molecular chaperone that suppresses the aggregation and
259 eins (sHsps) are a family of ATP-independent molecular chaperones that are important for binding and
260 t shock proteins (Hsps) are highly conserved molecular chaperones that are ubiquitously expressed in
261 ck proteins (sHsps) are virtually ubiquitous molecular chaperones that can prevent the irreversible a
262 ation, living cells maintain a population of molecular chaperones that ensure the solubility of the p
264 o families of highly conserved ATP-dependent molecular chaperones that fold and remodel proteins.
265 Small heat shock proteins are ubiquitous molecular chaperones that form the first line of defence
266 proteins (sHSPs) are ubiquitously expressed molecular chaperones that inhibit amyloid fibril formati
267 this approach, we have identified the known molecular chaperones that interact with human Heat Shock
269 Tumor cells display on their surface several molecular chaperones that normally reside in the endopla
270 Heat shock protein 70 (Hsp70) and Hsp90 are molecular chaperones that play essential roles in tumor
271 teins (sHSPs) are a class of ATP-independent molecular chaperones that play vital roles in maintainin
272 roteins, but in other cases, they can act as molecular chaperones that prevent protein aggregation, e
273 e induced by cellular stress and function as molecular chaperones that regulate protein folding.
275 membrane chaperones might exist, akin to the molecular chaperones that stabilize and direct the assem
276 proteins (sHsps) are a ubiquitous family of molecular chaperones that suppress the unspecific aggreg
277 ular components involved, including the H2-M molecular chaperone, the proteasome and gamma-interferon
279 essed by blocking the proteasome, Hsp70-type molecular chaperones, the Pib1 E3 ubiquitin-protein liga
281 , when exposed to conditions that compromise molecular chaperones, these proteins aggregate and becom
283 ergic neurons activates HSF1 and upregulates molecular chaperones through the metabotropic serotonin
285 ck factor (Hsf1) regulates the expression of molecular chaperones to maintain protein homeostasis.
286 ellular proteins, viral proteins depend upon molecular chaperones to mediate their stabilization and
287 HSPs) are well documented to act in vitro as molecular chaperones to prevent the irreversible aggrega
288 ay, codon optimization, and co-expression of molecular chaperones to promote expressed SrtA secretion
289 gulated by stress and are proposed to act as molecular chaperones to protect other proteins from stre
290 through downregulation of the mitochondrial molecular chaperone TRAP1, which subsequently increased
291 gated the effects of the ribosome-associated molecular chaperone trigger factor (TF) on alphaSyn stru
292 of protein L in presence of the prototypical molecular chaperone trigger factor over the range of phy
293 Specifically, constitutive downregulation of molecular chaperones was observed, which may impact resp
295 We propose that TRAP1 is a ligand-activated molecular chaperone, which couples ATP binding to dramat
298 ck proteins (sHSPs) are a conserved group of molecular chaperones with important roles in cellular pr
299 eine in the molecular chaperone BiP, a Hsp70 molecular chaperone within the ER, is susceptible to oxi
300 and through a co-expression strategy with a molecular chaperone, yields of one engineered thaumatin